An international team of physicists with the BigRIPS experiment taking place at the RIKEN Radioactive Isotope Beam Factory in Japan has determined the dripline for fluorine and neon isotopes. In their ...
Dripline: how many neutrons can you pack into a nucleus? (Courtesy: iStock/Altayb) The maximum number of neutrons that can be packed into fluorine and neon isotopes have been determined by nuclear ...
The Earth formed relatively quickly from the cloud of dust and gas around the Sun, trapping water and gases in the planet's mantle, based on neon isotopes from the depths of the Earth and deep space.
The Nature Index 2026 Research Leaders reveal the leading institutions and countries/territories in the natural sciences, health sciences, applied sciences and social sciences, according to their ...
A large international team of researchers has empirically measured the probability of electron capture by the neon-20 isotope (20 Ne) for the first time. The team has published two papers in the ...
A University research team has recently discovered a new, more efficient method of separating isotopes. Led by Steven J. Sibener, Jacob Graham, and Kevin Nihill from the Department of Chemistry, the ...
The Earth formed relatively quickly from the cloud of dust and gas around the Sun, trapping water and gases in the planet's mantle, according to research published Dec. 5 in the journal Nature. Apart ...
Artist's impression of planets forming around a young star. New, very precise measurements of krypton isotopes from deep in the Earth show that water, carbon and other volatile materials were ...
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